Shape memory luminescent cellulose/chitosan hydrogel for high sensitive detection of formaldehyde

被引:6
|
作者
Xie, Shu [1 ]
Dai, Tianwei [1 ]
Li, Fei [1 ]
Liu, Fengyi [1 ]
Xu, Quanqing [1 ]
Zhu, Aixin [1 ]
Zhang, Xufeng [1 ]
机构
[1] Yunnan Normal Univ, Coll Chem & Chem Engn, Kunming 650092, Peoples R China
基金
中国国家自然科学基金;
关键词
Lanthanide; Luminescent hydrogel; Formaldehyde detection; Cellulose; Chitosan; CHITOSAN; HYBRID; TRANSPARENT; EMISSION; FILMS; NANOPARTICLES; PERFORMANCE; PLATFORM; CELLS;
D O I
10.1016/j.ijbiomac.2023.123570
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Hybrid hydrogels containing biomacromolecules have been widely used in sensors, fluorescent probes, and other fields due to their high biocompatibility and nontoxicity. In this paper, tough hydrogels with interconnected macro-pores have been fabricated by freeze-induced chemical cross-linking of microfibrillated cellulose (MFC) and organic modified chitosan (CS). In this hydrogel materials, three-dimensional networks were formed by abundant hydrogen bonds and chemical cross-linking. Luminescent lanthanide complexes were covalently bonded to the hydrogel networks through coordination of Eu3+ ions with 2, 3-pyridine dicarboxylic acid modified chitosan. The luminescence of hydrogel materials was further improved by the replacement of coor-dination water with 2-thiophenyltrifluoroacetone (TTA). The prepared hydrogels showed excellent shape memory properties both under water and in air. The stress of the hybrid hydrogel at 80 % strain can reach 159 kPa, which is much higher than that of the traditional microfibrillated cellulose-based hydrogels. The obtained luminescent hybrid hydrogels exhibited an excellent fluorescence detection effect on formaldehyde. The detection limit for formaldehyde is 45.7 ppb, which is much lower than the WHO standard (80 ppb for indoor air). The novel, facile preparing procedure may extend the potential applications of hybrid lanthanide lumi-nescent hydrogel as fluorescence probes for pollution monitoring, especially for formaldehyde and other organic aldehydes.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Functionalized Cellulose Nanofibers as Crosslinkers to Produce Chitosan Self-Healing Hydrogel and Shape Memory Cryogel
    Juan, Li-Ting
    Lin, Shih-Ho
    Wong, Chui-Wei
    Jeng, U-Ser
    Huang, Chih-Feng
    Hsu, Shan-hui
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (32) : 36353 - 36365
  • [2] Preparation of chitosan/hydroxypropyl methyl cellulose thermo-sensitive hydrogel
    Chen L.
    Wang T.
    Li K.
    Wang, Tao (wonder79@swu.edu.cn), 2016, Sichuan University (32): : 156 - 161and167
  • [3] Effective Adsorption and Sensitive Detection of Cr(VI) by Chitosan/Cellulose Nanocrystals Grafted with Carbon Dots Composite Hydrogel
    Zeng, Hua
    Hu, Zhiyuan
    Peng, Chang
    Deng, Lei
    Liu, Suchun
    POLYMERS, 2021, 13 (21)
  • [4] Preparation and characterization of cellulose nanofibril/chitosan aerogels with high-adsorbability and sensitive indication for indoor free formaldehyde
    Huo, Dan
    Zhang, Xipeng
    Wei, Jiaxin
    Wang, Jinhua
    Zhang, Qiang
    Yang, Qiulin
    Zhu, Hongxiang
    Zhang, Fengshan
    Fang, Guigan
    Wu, Ting
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2024, 259
  • [5] A chitosan/hydroxypropylmethyl cellulose composite sponge with shape memory for rapid hemostasis
    Yu, Chunyan
    Wang, Kai
    Wang, Shuang
    Zhang, Huihui
    Qi, Kehui
    Li, Lu
    NEW JOURNAL OF CHEMISTRY, 2025, 49 (08) : 3334 - 3343
  • [6] Design of chitosan nanocomposite hydrogel for sensitive detection and removal of organic pollutants
    Danish, Ekram Y.
    Bakhsh, Esraa M.
    Akhtar, Kalsoom
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 159 : 276 - 286
  • [7] The Effect of Bacterial Cellulose on the Shape Memory Behavior of Polyvinyl Alcohol Nanocomposite Hydrogel
    Pirahmadi, Pegah
    Kokabi, Mehrdad
    6TH INTERNATIONAL BIENNIAL CONFERENCE ON ULTRAFINE GRAINED AND NANOSTRUCTURED MATERIALS (UFGNSM 2017), 2018, 1920
  • [8] Highly sensitive formaldehyde detection using biomass hydrogel with core-shell structure
    Li, Furong
    Zhu, Tao
    Yang, Jun
    Zhang, Xueli
    Fan, Shihan
    Fu, Shunjiang
    Liu, Yusheng
    SENSORS AND ACTUATORS B-CHEMICAL, 2024, 418
  • [9] Cellulose/Chitosan Composite Multifilament Fibers with Two-Switch Shape Memory Performance
    Zhu, Kunkun
    Wang, Yang
    Lu, Ang
    Fu, Qiang
    Hu, Jinlian
    Zhang, Lina
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, 7 (07) : 6981 - 6990
  • [10] Sensitive, quantitative, and high-throughput detection of angiogenic markers using shape-coded hydrogel microparticles
    Al-Ameen, Mohammad Ali
    Li, Ji
    Beer, David G.
    Ghosh, Gargi
    ANALYST, 2015, 140 (13) : 4530 - 4539